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Experimental and theoretical modelling of scattering properties of melting ice spheres at microwave frequencies

机译:微波频率熔化冰球散射性能的实验与理论建模

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The authors present newly obtained experimental and theoretical results for the scattering behaviour of melting ice spheres and, in particular, relates to the situation where concentric layers of water and partially melted ice and hard ice are present. Hard ice particles supporting a thin surface layer of water exhibit an increase in scattering relative to dry ice particles of the same radius. These particles are most likely to occur in strongly convective atmospheres as hailstone or graupel structures and can still contribute to the radar 'bright band' effect when the feature is not broken-up by convective cells. It is often possible to observe bright bands in the aftermath of heavy hailstorms. Typical measured results which illustrate the enhancement are plotted together with theoretical results (based on Mie theory) for spheres wholly composed of water and ice.
机译:作者提出了新获得的熔化冰球的散射行为的新获得的实验和理论结果,特别是涉及存在同心水层和部分熔化的冰和硬冰的情况。 支撑薄表面层的硬冰颗粒表现出相对于相同半径的干冰颗粒的散射增加。 这些颗粒最有可能发生在强烈对流的环境中作为HaIlstone或Graupel结构发生,并且当特征未被对流细胞分开时仍然可以促进雷达“亮带”效果。 通常可以在沉重的冰雹之后观察明亮的乐队。 说明增强的典型测量结果与由水和冰完全组成的球体的理论结果(基于MIE理论)一起绘制。

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